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使用分子动力学模拟对YidC介导的Pf3外壳蛋白膜插入进行的研究。

An investigation of the YidC-mediated membrane insertion of Pf3 coat protein using molecular dynamics simulations.

作者信息

Polasa Adithya, Hettige Jeevapani, Immadisetty Kalyan, Moradi Mahmoud

机构信息

Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, AR, United States.

出版信息

Front Mol Biosci. 2022 Aug 15;9:954262. doi: 10.3389/fmolb.2022.954262. eCollection 2022.

Abstract

YidC is a membrane protein that facilitates the insertion of newly synthesized proteins into lipid membranes. Through YidC, proteins are inserted into the lipid bilayer via the SecYEG-dependent complex. Additionally, YidC functions as a chaperone in protein folding processes. Several studies have provided evidence of its independent insertion mechanism. However, the mechanistic details of the YidC SecY-independent protein insertion mechanism remain elusive at the molecular level. This study elucidates the insertion mechanism of YidC at an atomic level through a combination of equilibrium and non-equilibrium molecular dynamics (MD) simulations. Different docking models of YidC-Pf3 in the lipid bilayer were built in this study to better understand the insertion mechanism. To conduct a complete investigation of the conformational difference between the two docking models developed, we used classical molecular dynamics simulations supplemented with a non-equilibrium technique. Our findings indicate that the YidC transmembrane (TM) groove is essential for this high-affinity interaction and that the hydrophilic nature of the YidC groove plays an important role in protein transport across the cytoplasmic membrane bilayer to the periplasmic side. At different stages of the insertion process, conformational changes in YidC's TM domain and membrane core have a mechanistic effect on the Pf3 coat protein. Furthermore, during the insertion phase, the hydration and dehydration of the YidC's hydrophilic groove are critical. These results demonstrate that Pf3 coat protein interactions with the membrane and YidC vary in different conformational states during the insertion process. Finally, this extensive study directly confirms that YidC functions as an independent insertase.

摘要

YidC是一种膜蛋白,可促进新合成的蛋白质插入脂质膜中。通过YidC,蛋白质通过SecYEG依赖性复合物插入脂质双层。此外,YidC在蛋白质折叠过程中起伴侣蛋白的作用。多项研究提供了其独立插入机制的证据。然而,YidC不依赖SecY的蛋白质插入机制的分子细节在分子水平上仍然难以捉摸。本研究通过平衡和非平衡分子动力学(MD)模拟相结合,在原子水平上阐明了YidC的插入机制。本研究构建了脂质双层中YidC-Pf3的不同对接模型,以更好地理解插入机制。为了全面研究所开发的两种对接模型之间的构象差异,我们使用了经典分子动力学模拟并辅以非平衡技术。我们的研究结果表明,YidC跨膜(TM)凹槽对于这种高亲和力相互作用至关重要,并且YidC凹槽的亲水性在蛋白质跨细胞质膜双层转运到周质侧中起重要作用。在插入过程的不同阶段,YidC的TM结构域和膜核心的构象变化对Pf3外壳蛋白具有机制上的影响。此外,在插入阶段,YidC亲水性凹槽的水合和脱水至关重要。这些结果表明,在插入过程中,Pf3外壳蛋白与膜和YidC的相互作用在不同构象状态下有所不同。最后,这项广泛的研究直接证实YidC作为一种独立的插入酶发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5165/9421054/4da3a9a64209/fmolb-09-954262-g001.jpg

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